Rawala-Sheikh R, Ahmad S S, Ashby B, Walsh P N
Thrombosis Research Center, Temple University School of Medicine, Philadelphia, Pennsylvania 19140.
Biochemistry. 1990 Mar 13;29(10):2606-11. doi: 10.1021/bi00462a025.
Thrombin-activated human platelets, in the presence of factors VIIIa and X, have specific, high-affinity (Kd approximately 0.5 nM), saturable binding sites for factor IXa that are involved in factor X activation [Ahmad, S.S., Rawala-Sheikh, R., & Walsh, P.N. (1989) J. Biol. Chem. 264, 3244-3251]. To determine the functional consequences of factor IXa binding to platelets, a detailed kinetic analysis of the effects of platelets, phospholipids, and factor VIII on factor IXa catalyzed factor X activation was done. In the absence of platelets, phospholipids, or factor VIII, the Michaelis constant (Km = 81 microM) was greater than 500-fold higher than the factor X concentration in human plasma. Unactivated platelets and thrombin-activated factor VIII, alone or in combination, had no effect on the kinetic parameters, whereas thrombin-activated platelets caused a major decrease in Km (0.39 microM) with no significant effect on kcat (0.052 min-1) and allowed factor VIIIa to decrease the Km further to a concentration (0.16 microM) near that of factor X in plasma and to increase the kcat 24,000-fold to 1240 min-1. Sonicated mixed phosphatidylserine/phosphatidylcholine vesicles (25/75, mol/mol) had kinetic effects similar to those of activated platelets. When factor IXa binding to thrombin-activated platelets and rates of factor X activation were measured simultaneously at saturating concentrations of factor X and factor VIIIa, the kcat was independent of factor IXa concentration, and the mean kcat value was 2391 min-1. The increase in catalytic efficiency (kcat/Km) in the presence of thrombin-activated platelets and factor VIIIa was (17.4 x 10(6))-fold.
在因子VIIIa和X存在的情况下,凝血酶激活的人血小板具有与因子IXa特异性、高亲和力(解离常数Kd约为0.5 nM)的可饱和结合位点,这些位点参与因子X的激活[Ahmad, S.S., Rawala-Sheikh, R., & Walsh, P.N. (1989) J. Biol. Chem. 264, 3244 - 3251]。为了确定因子IXa与血小板结合的功能后果,对血小板、磷脂和因子VIII对因子IXa催化因子X激活的影响进行了详细的动力学分析。在没有血小板、磷脂或因子VIII的情况下,米氏常数(Km = 81 μM)比人血浆中因子X的浓度高500倍以上。未激活的血小板和凝血酶激活的因子VIII单独或联合使用对动力学参数均无影响,而凝血酶激活的血小板使Km大幅降低(0.39 μM),对催化常数(kcat = 0.052 min⁻¹)无显著影响,并使因子VIIIa进一步将Km降低至接近血浆中因子X的浓度(0.16 μM),并将kcat提高24000倍至1240 min⁻¹。超声处理的混合磷脂酰丝氨酸/磷脂酰胆碱囊泡(25/75,摩尔/摩尔)具有与激活血小板相似的动力学效应。当在因子X和因子VIIIa的饱和浓度下同时测量因子IXa与凝血酶激活血小板的结合以及因子X激活速率时,kcat与因子IXa浓度无关,平均kcat值为2391 min⁻¹。在凝血酶激活的血小板和因子VIIIa存在下,催化效率(kcat/Km)的增加为(17.4×10⁶)倍。